Jie Zheng, Siyu Wang
Microbial-induced corrosion (MIC) is a significant cause of metal material failure, leading to substantial economic losses in industrial equipment and infrastructure. This article investigates the utilization of MXene materials, which have demonstrated sterilization capabilities through their structural properties, photothermal effects, and the generation of reactive oxygen species (ROS). The study shows that surface functionalization of MXene and its integration with diverse antibacterial agents can enhance the antibacterial efficacy of MXene hydrogels, positioning them as potential solutions for microbial corrosion protection. Various methods such as physical mixing, chemical cross-linking, and in-situ polymerization facilitate the combination of MXene with hydrogels, significantly improving their performance. This review systematically examines the fundamental properties, antibacterial mechanisms, and applications of MXene and its composite hydrogels in combating microbial corrosion. Unlike prior generalized reviews, this work emphasizes the connection between the physicochemical characteristics of MXene, including its ultrathin structure, photothermal effect, and ROS generation, to the stages of biofilm development in microbial corrosion. The research presents a targeted framework for MIC protection, underlining the vast prospects of MXene in the realm of antibacterial hydrogels, driven by its unique characteristics and diverse antibacterial mechanisms.
@article{a7825fc5-252c-46e0-bc2c-e8da5ff936e9,
title={Two dimensional MXene materials and their functionaliz 2026 Materials Today },
author={Jie Zheng and Siyu Wang},
year={2026},
language={en}
}TY - JOUR TI - Two dimensional MXene materials and their functionaliz 2026 Materials Today AU - Jie Zheng AU - Siyu Wang PY - 2026 LA - en ER -
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